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Isolation and immobilization of new aerobic denitrifying bacteria. (Special Issue: Geomicrobial ecotoxicology.)

机译:分离和固定新的需氧反硝化细菌。 (特刊:地球微生物生态毒理学。)

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Nitrate is considered to be one of the most widely present pollutants leading to eutrophication of environment. The purpose of this work was to isolate and identify new aerobic denitrifying bacteria from nitrate-contaminated sediments and utilize modified immobilized techniques for immobilizing isolates to improve nitrate removal efficiency. Using traditional enrichment approach, three purified aerobic bacteria (HS-N2, HS-N25 and HS-N62) capable of NO3--N removal from sediments were obtained. According to their physiological properties and 16S rRNA gene sequences analysis, isolates HS-N2, HS-N25 and HS-N62 were identified as Salmonella sp., Bacillus cereus and Pseudomonas sp. respectively. After cultivating at 37 degrees C with 150 rpm shaking, the percentages of NO3--N removal by isolates HS-N2, HS-N25 and HS-N62 were 95% in 24 h, 100% in 24 h and 96% in 12 h, respectively. Due to its higher removal rate of NO3--N, HS-N62 was selected for immobilization with polyvinyl alcohol (PVA)-sodium alginate (SA) and powder activated carbon. The removal efficiency of NO3--N by immobilized HS-N62 pellets was enhanced with no nitrite accumulation. Immobilized pellets exhibited more desirable denitrification after 24 h under stressful batch conditions, indicating they had stable and strong denitrifying capabilities.
机译:硝酸盐被认为是导致环境富营养化的最广泛存在的污染物之一。这项工作的目的是从受硝酸盐污染的沉积物中分离和鉴定新的好氧反硝化细菌,并利用改良的固定化技术固定分离物以提高硝酸盐去除效率。采用传统的富集方法,获得了三种能够去除沉积物中NO 3 - -N的纯化好氧细菌(HS-N2,HS-N25和HS-N62)。根据其生理特性和16S rRNA基因序列分析,分离株HS-N2,HS-N25和HS-N62被鉴定为沙门氏菌,蜡状芽孢杆菌和假单胞菌。分别。在37摄氏度下以150 rpm摇动培养后,分离株HS-N2,HS-N25和HS-N62去除NO 3 - -N的百分比为95% 24小时内分别为100%和24小时内为96%。由于其对NO 3 - -N的去除率较高,因此选择HS-N62固定化聚乙烯醇(PVA)-藻酸钠(SA)和粉末活性炭。固定化的HS-N62颗粒去除NO 3 - -N的效率得到提高,且无亚硝酸盐积累。固定的小球在有压力的间歇条件下24小时后表现出更理想的反硝化作用,表明它们具有稳定而强大的反硝化能力。

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